• 제목/요약/키워드: remnant after boiling and decoction

검색결과 4건 처리시간 0.024초

한약재에 포함된 금속의 전탕 전과 후의 농도변화연구 -첩약 / 다린 찌꺼기 / 탕약을 중심으로- (Concentration of metal in herbal drugs -in crude, remnant after boiling and decoction of herbal drugs-)

  • 이선동;박해모;이장천;국윤범
    • 대한한의학회지
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    • 제24권2호
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    • pp.59-65
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    • 2003
  • This study was conducted to analyze metal concentration changes following processing steps for crude, remnant after boiling, and decoction of Korea herbal drugs. We measured meta.! concentration from 20 random patients who visited Oriental medical clinics for treatment of several diseases through normal action. The results obtained were as below: First, in the study to acknowledge quality control between Korean Lab and Harvard Lab in the US, 20 equal herbal samples resulted in the same values, so we confirmed the precision of measurement results from both labs. Second, hazardous metal mean concentration in crude, remnant after boiling, and decoction of herbal drugs were $32.5{\mu\textrm{g}}/22.1{\mu\textrm{g}}/8.8{\mu\textrm{g}}$ for As, $0.0{\mu\textrm{g}}/0.0{\mu\textrm{g}}/0.0{\mu\textrm{g}}$ for Cd, $1.0{\mu\textrm{g}}/0.0{\mu\textrm{g}}/0.0{\mu\textrm{g}}$ for Hg and $5416.3{\mu\textrm{g}}/3639.6{\mu\textrm{g}}/1002.6{\mu\textrm{g}}$ for Pb, respectively. These metal concentrations decreased 72.9-100.0% compared to crude status. The same trend was also visible in the other essential elements. From reviewing these results, we could carefully conclude that decoction had the least amount of metal concentration and is the optimal way to intake herbal drugs.

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소음인(少陰人) 곽향정기산(藿香正氣散)의 위해물질에 대한 안전성 연구 (Safety on Hazardous Substances of Soeumin Kwakhyangjeonggi-san)

  • 서창섭;김정훈;황대선;신현규
    • 사상체질의학회지
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    • 제22권3호
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    • pp.132-140
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    • 2010
  • 1. Objective: To compare the contents and transfer rate of hazardous substances in crude, washing solution, crude after washing, decoction and remnant after boiling. 2. Methods: The heavy metal contents of each step were measured by inductively coupled plasma mass spectrometer (ICP-MS) and mercury analyzer (MA-2). In order to analyze pesticides in each sample we used simultaneous multi-residue analysis of pesticides by GC/ECD, which was followed by GC/MSD analysis to confirm the identity of the detected pesticide in each sample. In addition, the contents of sulfur dioxide (SO2) were performed by Monier-Williams distillation method. 3. Results: 1) Contents (mg/kg) of heavy metals in decoction of all herbal medicine prescriptions were not detected. 2) Transfer rates (%) of heavy metals from crude to remnant were As (83.3%), Cd (100.0%), Pb (182.6%) and Hg (100.0%). 3) Contents (mg/kg) of residual pesticides were not detected. 4) Transfer rate (%) of sulfur dioxide (SO2) from crude to remnant was 44.2%. 4. Conclusion: Our results showed that boiled herbal medicine prescriptions which we take is safe from the hazardous substances.

한약재의 벤조피렌 함량 및 추출물에서의 이행률에 대한 연구 (Study on Benzo(a)pyran Content and its Transfer Ratio in Extracts of Medicinal Herbs)

  • 윤혜민;이은주;임광희
    • Korean Chemical Engineering Research
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    • 제56권6호
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    • pp.832-840
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    • 2018
  • 본 연구에서는 건조하기 어려운 원료한약재 5 품목(총 50 건)을 대상으로 벤조피렌 함량 및 물 추출물과 연조엑스 제조단계에서의 벤조피렌의 이행률을 HPLC/FLD로 측정하였다. 벤조피렌의 검량선은 3~40 ng/mL의 농도 범위에서 상관계수($R^2$)가 1.000으로서 우수한 상관관계를 나타내었다. 원료한약재의 벤조피렌 검출 범위는 불검출 ${\sim}37.54{\mu}g/kg$이고, 검출평균은 $6.73{\mu}g/kg$이었다. 그 중에서 식품의약품안전처의 고시(2009-302호) 기준인 $5{\mu}g/kg$ 이상 검출된 시료는 15건(30%)이었다. 특히 황련의 벤조피렌 함량은 $37.54{\mu}g/kg$으로서 가장 높았다. 물 추출물, 연조엑스 및 물 추출 후 찌꺼기에서 벤조피렌의 검출 범위는 각각 불검출${\sim}2.31{\mu}g/kg$, 불검출${\sim}2.28{\mu}g/kg$$2.18{\sim}21.91{\mu}g/kg$으로 분석되었다. 물 추출물(탕제)와 연조엑스의 제조에서 벤조피렌은 이행되지 않거나, 특히, 현삼에서 물 추출물과 연조엑스의 경우에 각각 최대 8.9%와 최대 9.8%의 이행률을 보였다. 따라서 원료한약재에 비해 물 추출물 및 연조엑스에서 벤조피렌 함량이 각각 90.0% 이상까지 감소하였다.

한방처방 전탕 단계별 위해물질의 이행률에 대한 연구 (Study on Transfer Rate of Hazardous Materials in Herbal Medicine Prescriptions)

  • 서창섭;김정훈;하혜경;이미영;이준경;이남헌;이호영;이진아;이설림;신현규
    • 대한한의학회지
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    • 제31권4호
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    • pp.9-19
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    • 2010
  • Objective: To compare the contents and transfer rate of hazardous substances in crude, washing solution, crude after washing, decoction and remnant after boiling. Methods: The heavy metal contents of each step were measured by inductively coupled plasma mass spectrometer (ICP-MS) and mercury analyzer (SP-3DS). In order to analyze pesticides in each sample we used simultaneous multi-residue analysis of pesticides by GC/ECD, which was followed by GC/MSD analysis to confirm the identity of the detected pesticide in each sample. In addition, the contents of sulfur dioxide ($SO_2$) were performed by Monier-Williams distillation method. Results: 1. Contents (mg/kg) of heavy metals were not detected in decoctions of any tested herbal medicine prescriptions. 2. Transfer rates (%) of heavy metals from crude to remnant were as follows: Yijin-tang (As: 46.9, Cd: 50.0 and Pb: 100.0), Oryung-san (As: 80.0, Cd: 100.0 and Pb: 73.8), Hwangryunhaedok-tang (As: 88.9, Cd: 71.4 and Pb: 92.7), Bangpungtongseong-san (As: 100.0, Cd: 17.3 and Pb: 56.1), Oyaksungi-san (As: 47.4, Cd: 175.0 and Pb: 142.4). 3. Contents (mg/kg) of residual pesticides were not detected in any samples. 4. Transfer rate (%) of sulfur dioxide ($SO_2$) from crude to remnant in all samples were as follows: Yijin-tang (25.0), Oryung-san (166.7), Hwangryunhaedok-tang (50.0), Bangpungtongseong-san (181.8), Oyaksungi-san (50.0). Conclusion: Our results showed that the boiled herbal medicine prescriptions which we take are safe from the hazardous substances.